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水母复杂无性繁殖策略的演化

Evolution of Complex Asexual Reproductive Strategies in Jellyfish.

作者信息

Schnedler-Meyer Nicolas Azaña, Pigolotti Simone, Mariani Patrizio

出版信息

Am Nat. 2018 Jul;192(1):72-80. doi: 10.1086/697538. Epub 2018 Apr 30.

Abstract

Many living organisms in terrestrial and aquatic ecosystems rely on multiple reproductive strategies to reduce the risk of extinction in variable environments. Examples are provided by the polyp stage of several bloom-forming jellyfish species, which can reproduce asexually using different budding strategies. These strategies broadly fall into three categories: (1) fast localized reproduction, (2) dormant cysts, or (3) motile and dispersing buds. Similar functional strategies are also present in other groups of species. However, mechanisms leading to the evolution of this rich reproductive diversity are yet to be clarified. Here we model how risk of local population extinction and differential fitness of alternative modes of asexual reproduction could drive the evolution of multiple reproductive modes as seen in jellyfish polyps. Depending on environmental parameters, we find that evolution leads to a unique evolutionarily stable strategy, wherein multiple reproductive strategies generally coexist. As the extinction risk increases, this strategy shifts from a pure budding mode to a dual strategy and finally to one characterized by allocation into all three modes. We identify relative fitness-dependent thresholds in extinction risk where these transitions can occur and discuss our predictions in light of observations on polyp reproduction in laboratory and natural systems.

摘要

陆地和水生生态系统中的许多生物依靠多种繁殖策略来降低在多变环境中灭绝的风险。几种形成水华的水母物种的水螅体阶段就是例子,它们可以通过不同的出芽策略进行无性繁殖。这些策略大致可分为三类:(1)快速局部繁殖,(2)休眠囊胞,或(3)游动和扩散芽体。类似的功能策略在其他物种群体中也存在。然而,导致这种丰富繁殖多样性进化的机制尚待阐明。在这里,我们建立模型来研究局部种群灭绝风险和无性繁殖替代模式的差异适合度如何推动如水母水螅体中所见的多种繁殖模式的进化。根据环境参数,我们发现进化会导致一种独特的进化稳定策略,其中多种繁殖策略通常共存。随着灭绝风险增加,这种策略从单纯的出芽模式转变为双重策略,最终转变为以分配到所有三种模式为特征的策略。我们确定了这些转变可能发生的灭绝风险中相对适合度依赖的阈值,并根据在实验室和自然系统中对水螅体繁殖的观察来讨论我们的预测。

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